Claims
- 1. A process for converting a material to desirable conversion products at high yield, comprising the steps:
(a) providing a starting material in a solvent comprising acid; (b) optionally reacting said material thereby yielding at least one amide; and, (c) reducing at least one amide in the presence of a reduction catalyst thereby yielding at least one product at high yield.
- 2. The process of claim 1, wherein said starting material is selected from the group consisting of amino acids, amides, lactams, pyrrolidinones, or combinations thereof.
- 3. The process of claim 1, wherein said starting material is selected from glutamic acid, pyrrolidinones, 2-pyrrolidinone, N-methylpyrrolidinone, pyroglutamic acid, pyroglutaminol, or combinations thereof.
- 4. The process of claim 2, wherein said material comprises a carbon number in the range from about 1 to about 20.
- 5. The process of claim 2, wherein said amino acids are selected from lysine, aspartic acid, asparagine, glutamine, glutamic acid, arginine, pyroglutamic acid, ornithine, and combinations thereof.
- 6. The process of claim 2, wherein said amides are cyclic amides.
- 7. The process of claim 1, wherein reducing comprises selective reduction of a lactam carbonyl of said amide.
- 8. The process of claim 1, wherein said product is selected from amines, cyclic amines, alcohols, and combinations thereof.
- 9. The process of claim 1, wherein said product contains a ring having a carbon number in the range from about 4 to about 7.
- 10. The process of claim 1, wherein said product is prolinol.
- 11. The process of claim 1, wherein said solvent is selected from the group consisting of alcohols, methanol, ethanol, water, carbon dioxide, non-protio solvents, alkanes, cyclohexane, ethers, and combinations thereof.
- 12. The process of claim 1, wherein reacting and reducing comprises heating said material at a temperature in the range from about 100° C. to about 200° C. under a hydrogen pressure in the range from about 15 psi to about 3000 psi.
- 13. The process of claim 1, wherein said acid is selected from HCl, H2SO4, H3PO4, carbon dioxide, amino acids, carboxylic acids, solid acids, and combinations thereof.
- 14. The process of claim 13, wherein said solid acids are selected from acidic resins, acidic zeolites, acidic clays, and combinations thereof.
- 15. The process of claim 14, wherein said acidic resins are selected from perfluorinated polymers and copolymers comprising tetrafluoroethylene, perfluoro-3,6-dioxa-4-methyl-7-octenesulfonyl fluoride, carboxylated polystyrenes, sulfonated polystyrenes, and combinations thereof.
- 16. The process of claim 1, wherein said acid has a molar ratio to starting material of less than or equal to about 1.2.
- 17. The process of claim 1, wherein said reduction catalyst is selected from Ru, Re, Pd, Pt, Cu, Co, Mo, Ni, Rh, and combinations thereof.
- 18. The process of claim 17, wherein said catalyst comprises a solid support.
- 19. The process of claim 17, wherein said solid support is a carbon support.
- 20. The process of claim 17, wherein said catalyst is unsupported.
- 21. The process of claim 1, further comprising a reaction time of up to about 8 hours.
- 22. The process of claim 1, wherein said yield is of up to about 100 percent.
- 23. The process of claim 1, wherein said yield is at least about 80 percent.
- 24. A process for converting a material to desirable conversion products at high yield, comprising the steps:
(a) providing an amino acid starting material in a solvent in the absence of added acid; (b) optionally reacting said material thereby yielding at least one lactam; and, (c) reducing at least one acid functional group of said material in the presence of a reduction catalyst yielding at least one product at high selectivity.
- 25. The process of claim 24, wherein said amino acid staring material comprises an additional carboxylic acid functional group.
- 26. The process of claim 24, wherein said amino acid starting material is selected from the group consisting of aspartic acid, asparagine, glutamine, glutamic acid, arginine, pyroglutamic acid, ornithine, and substitution products thereof.
- 27. The process of claim 24, wherein said product is selected from amines, amides, cyclic amines, cyclic amides, alcohols, and combinations thereof.
- 28. The process of claim 24, wherein said product comprises a carbon number in the range from about 1 to about 20.
- 29. The process of claim 24, wherein said product comprises a ring having a carbon number in the range from about 4 to about 7.
- 30. The process of claim 24, wherein said product is pyroglutaminol.
- 31. The process of claim 24, wherein said high selectivity is greater than about 70 percent.
- 32. The process of claim 24, wherein reducing comprises selective reduction of a pendant carboxylic acid of a lactam.
- 33. The process of claim 24, wherein said solvent is selected from the group consisting of alcohols, methanol, ethanol, water, carbon dioxide, and combinations thereof.
- 34. The process of claim 24, wherein reacting and reducing comprises heating said material at a temperature in the range from about 70° C. to about 200° C. under a hydrogen pressure in the range from about 15 psi to about 3000 psi.
- 35. The process of claim 24, wherein said reduction catalyst is selected from Ru, Pd, Pt, Cu, Co, Mo, Ni, copper chromite, Re, Rh.
- 36. The process of claim 35, wherein said catalyst comprises a solid support.
- 37. The process of claim 35, wherein said solid support is a carbon support.
- 38. The process of claim 35, wherein said catalyst is unsupported.
- 39. The process of claim 24, further comprising a reaction time of up to about 8 hours.
- 40. A process for converting a material to desirable N-substituted reaction products at high yield, the steps comprising:
(a) providing an amino acid starting material in a solvent; (b) esterifying said material forming an esterified precursor; (c) optionally reacting said esterified precursor thereby yielding at least one lactam; and, (d) reducing at least one esterified acid functional group of said esterified precursor in the presence of a reduction catalyst yielding at least one product at high yield.
- 41. The process of claim 40, wherein said amino acid starting material comprises an additional carboxylic acid functional group.
- 42. The process of claim 40, wherein said amino acid starting material is selected from aspartic acid, asparagine, glutamine, glutamic acid, arginine, pyroglutamic acid, ornithine, and substitution products thereof.
- 43. The process of claim 40, wherein said starting material comprises a carbon number in the range from about 1 to about 20.
- 44. The process of claim 40, wherein said solvent is selected from the group consisting of alcohols, methanol, ethanol, water, carbon dioxide, non-protio solvents, cyclohexane, alkanes, ethers, or combinations thereof.
- 45. The process of claim 40, wherein esterifying comprises combining said material with compounds selected from alcohols, alkyl halides, olefins, and combinations thereof.
- 46. The process of claim 40, wherein esterifying is partial.
- 47. The process of claim 40, wherein esterifying is complete.
- 48. The process of claim 40, wherein reacting and reducing comprises heating said material at a temperature in the range from about 30° C. to about 200° C. under a hydrogen pressure in the range from about 15 psi to about 3000 psi.
- 49. The process of claim 40, wherein said product contains a ring having a carbon number in the range from about 4 to about 7.
- 50. The process of claim 40, wherein said reduction catalyst comprises Ru, Re, Rh, Pd, Pt, Cu, Co, Ni, copper-chromite, and combinations thereof.
- 51. The process of claim 50, wherein said catalyst comprises a solid support.
- 52. The process of claim 50, wherein said solid support is a carbon support.
- 53. The process of claim 50, wherein said catalyst is unsupported.
- 54. The process of claim 40, wherein said product is pyroglutaminol.
- 55. The process of claim 40, wherein said esterified precursor is a lactam with an esterified acid functional group.
- 56. The process of claim 55, further comprising reacting said esterified precursor with a compound selected from alkylating agents, alcohols, alkyl halides, olefins, carbonates, sulfates, sulfonates thereby yielding an N-substituted lactam.
- 57. The process of claim 55, wherein said N-substituted lactam comprises an R-functional group on N of said lactam selected from —H, alkyl and substituted alkyl groups having carbon numbers in the range from about 1 to about 20, and -aryl.
- 58. The process of claim 55, wherein said N-substituted lactam is an N-substituted pyroglutamic acid.
- 59. The process of claim 55, wherein said N-substituted lactam is N-substituted pyroglutaminol.
- 60. The process of claim 40, wherein optionally reacting said material is omitted.
- 61. The process of claim 60, wherein reducing comprises selective reduction of a carbonyl alpha to an amino group in the presence of a second carboxylic acid group.
- 62. The process of claim 60, wherein said product is 4-amino-5-ol-pentanoic acid.
- 63. The process of claim 60, wherein said high yield is at least about 80 percent.
- 64. The process of claim 40, wherein said product is selected from the group consisting of N-substituted compounds, pyrrolidinones, N-substituted pyrrolidinones, N-alkylated pyrrolidinones, N-aryl substituted pyrrolidinones, imines, pyroglutaminols, N-substituted pyroglutaminols, N-alkylated pyroglutaminols, and combinations thereof.
- 65. The process of claim 40, wherein said product comprises non-reducing heteroatoms N and O.
- 66. The process of claim 40, wherein reacting and reducing comprises a reaction time of less than or equal to about 8 hours.
- 67. The process of claim 40, further comprising an optional ring-opening step.
- 68. The process of claim 67, wherein said ring opening comprises adding base.
- 69. The process of claim 67, wherein said base is selected from the group consisting of alkali metal hydroxides, alkaline earth metal hydroxides, amines, Brönsted bases, and Lewis bases.
- 70. The process of claim 67, wherein said product is 4-amino-5-ol-pentanoic acid.
- 71. A process for selectively converting a material to desirable reaction end products at high yield, comprising the steps:
(a) providing a starting material in a solvent; (b) optionally reacting said material to yield at least one lactam; (c) deprotonating a pendant acid of said material in the presence of a base or Lewis Acid; (d) reducing a lactam carbonyl of said material in the presence of a reduction catalyst yielding a cyclic amine having a carboxylic acid functional group.
- 72. The process of claim 71, wherein said starting material is pyroglutamic acid.
- 73. The process of claim 71, wherein said lactam is pyroglutamic acid.
- 74. The process of claim 71, wherein said cyclic amine is proline.
- 75. The process of claim 71, wherein catalyst is selected from Pd and Pt.
- 76. The process of claim 71, wherein catalyst is selected from Ru or Re and said solvent further comprises a weak base selected from the group consisting of amines, cyclic amines, bisulfates, phosphates, phosphites, acetates, and combinations thereof.
- 77. The process of claim 76, wherein said catalyst is selected from Ru or Re in the presence of a Lewis Acid.
- 78. The process of claim 71, wherein said catalyst further comprises a catalyst support.
- 79. The process of claim 78, wherein catalyst comprises a solid support.
- 80. The process of claim 78, wherein said solid support is a carbon support.
- 81. The process of claim 78, wherein said catalyst is unsupported.
Parent Case Info
[0001] This application claims priority to provisional application No. 60/468,614 filed May 6, 2003 now abandoned, which contents are incorporated by reference as if fully rewritten herein.
Government Interests
[0002] This invention was made with Government support under Contract DE-AC0676RLO-1830 awarded by the U.S. Department of Energy. The Government has certain rights in the invention.
Provisional Applications (1)
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Number |
Date |
Country |
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60468614 |
May 2003 |
US |